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1.
Dinuclear iron tetranitrosyl complex with the composition [Fe2(SPh)2(NO)4] (1) was synthesized and its single crystals and polycrystals were studied by X-ray diffraction, IR spectroscopy, and elemental analysis. The decomposition products of complex 1 were investigated by electrochemical method and mass spectrometry. The mass spectrum of a solution of complex 1 shows two groups of ions: the primary decomposition products of 1 in solution (the complex ions [Fe(SPh)(NO)2(NO2)], [Fe(SPh)2(NO)], and [Fe(SPh)2(NO)2]) and a series of the ions [FeO2 + n(NO)] and [FeO3 + n(NO)] (n = 0–4), which are formed in secondary reactions. The structures of the complexes, which were formed through the Fe-NO bond dissociation and the replacement of the NO ligand by aqua and oxygen ligands in complex 1, and the structure of the complex [FeO3] were studied by quantum chemical modeling.  相似文献   

2.
The tetranitrosyl iron complex with pyridine-2-yl [Fe2(SC5H4N)2(NO)4] (1) has higher NO-donating activity in 3% aqueous solutions of DMSO (pH 7.0, 25 °C) than the organic NO donor, viz., adduct of NO with diethylenetriamine (NO-adduct). The NO concentration was determined by the spectrophotometric method based on the formation of an NO complex with hemoglobin (Hb). The apparent first-order rate constants of the studied reactions are (6.15±0.6)·10−1 s−1 and (0.8±0.08)·10−1 s−1 for complex 1 and the NO-adduct, respectively, at an Hb concentration of 2·10−1 mol L−1 and the ratio [NO donor]/[Hb] = 10. The effect of Hb and [NO donor]/[Hb] ratio on the rate of NO generation from a solution of complex 1 was studied. For a fourfold decrease in the concentration of complex 1 the reaction rate constant decreases to 0.5·10−4 s−1, whereas the fourfold increase in the Hb concentration results in the stabilization of complex 1. Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 4, pp. 732–736, April, 2007.  相似文献   

3.
The neutral dinuclear iron nitrosyl complex [Fe2(SC3H5N2)2(NO)4] (1) of the “g = 2.03” family with a ligand analogous to natural mercaptohistidine was synthesized by the metathesis reaction of the thiosulfate ligands in the [Fe2(S2O3)2(NO)4]2− anion with imidazolidine-2-thiolate ligands. The electrochemical determination of nitrogen oxide in solution showed that compound 1 has a lower NO-donor ability compared to the iron complexes with 1-methylimidazole-2-thiol and imidazole-2-thiol synthesized earlier. Study of the magnetic properties of polycrystals of 1 demonstrated that the effective magnetic moment at room temperature is ca. 2.45 μB and corresponds to a molecule containing a pair of the noninteracting spins S = 1/2. This is evidence that each iron coordination unit in complex 1 contains one unpaired electron, and the iron atom is in the low-spin state. Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 1, pp. 28–34, January, 2007.  相似文献   

4.
New binuclear tetranitrosyl iron complex with pyrimidin-2-yl of the μ2-S type [Fe2(SC4H3N2)2(NO)4] (1) was synthesized by the exchange reaction of thiosulfate ligands in the [Fe(S2O3)2(NO)2]3s- anion for pyrimidin-2-yl ligands. The crystal structure of complex 1 was studied by single-crystal X-ray diffraction analysis. According to the X-ray diffraction data, pyrimidin-2-yl is coordinated to the iron atom in the thiol form. According to the quantum chemical calculations, the low stability of complex 1 is related to a possibility of formation of the coordination bond of the iron atom with the atom of the pyrimidine cycle of the ligand after NO group detachment. The ability of complex 1 to donate NO and the kinetics of its hydrolysis in aqueous solutions were studied by electrochemical analysis using sensor electrodes ami NO-700, by spectrophotometry in the pH interval from 6.0 to 7.76, and in the reaction with hemoglobin. Complex 1 is most stable in a neutral medium and more vigorously evolves NO in acidic and alkaline media.  相似文献   

5.
Heterometallic compounds BaCr2(OH)(Ac)(Nta)2 · 4H2O (I) and [Fe(L)3][Cr2(OH)(Ac)(Nta)2] · nH2O (L is Bipy (II) and Phen (III); Bipy is, αα′-bipyridine, Phen is o,o′-phenanthroline, Ac is acetate ion, Nta is nitrilotriacetate ion; n = 8 (II) and 6.25 (III)) are synthesized. According to the X-ray diffraction data, compounds II and III have ionic structures built of the isolated complex cations [Fe(L)3]2+, binuclear complex anions [Cr2(OH)(Ac)(Nta)2]2−, and crystallization water molecules. The magnetic properties of compounds II and III in the interval from 2 to 300 K confirm assumptions on the diamagnetic character of [Fe(L)3]2+ and indicate the antiferromagnetic interaction between the chromium atoms in the dimeric fragment [Cr2(OH)(Ac)(Nta)2]2−.  相似文献   

6.
In biological electron transport chains, [2Fe–2S] clusters have versatile electrochemical properties and serve as important electron carriers in a wide variety of biological processes. To understand structural effects on the variation in reduction potentials in [2Fe–2S] proteins, a series of [2Fe–2S] protein analogs with bidentate ligands ( − SC 2 H 4 NH 2) were recently produced by collision-induced dissociation of [Fe 4 S 4(L)4]2− (L = SC 2 H 4 NH 2). Combined with photoelectron spectroscopy findings, the reaction mechanisms of [Fe 4 S 4(L)4]2− to [Fe 2 S 2(L)2] and the structural effects of ligands on the electronic and redox properties of the [2Fe–2S] clusters are investigated here using broken-symmetry density functional theory method. Our calculations suggest that [Fe 2 S 22L)(cisL)] and [Fe 2 S 22L)2] are the experimentally observed [2Fe–2S] products, which are generated via a fission process of [Fe 4 S 4(L)4]2− followed by rearrangement of ligands of [Fe 2 S 2(L)2]. Moreover, structural variation of the ferrous center may dramatically affect the oxidation energy of the [2Fe–2S] clusters.  相似文献   

7.
The structures and results of the static magnetic susceptibility investigation of the copper(II) binuclear complex with salicylic acid diacyl hydrazide (H2L), [Cu2(L)(Py)4] (I), and the copper(II) trinuclear complex with diacyl dihydrazide of salicylic and glutaric acids (H6L′), [Cu3(L′)(Py)4] · 2Py (II), are described. The exchange antiferromagnetic interactions between the paramagnetic centers with the exchange interaction parameter −2J = 119 cm−1 for dimer I and 14 cm−1 for trinuclear complex II are detected.  相似文献   

8.
The interaction of (1,8)bis(2-hydroxybenzamido)3,6-diazaoctane (LH2) with iron(III) in acidic medium resulted in the formation of a mononuclear complex, Fe(LH3)4+ which further yielded, [Fe(LH2)]3+, [Fe(LH)]2+, and [FeL]+ due to protolytic equilibria. The formation of [Fe(LH3)]4+ was investigated under varying [H+]T (0.01–0.10 mol dm−3) and [Fe3+]T (1.00 × 10−3–1.70 × 10−2, [L]T = 1.0 × 10−4 mol dm−3) (I = 0.3 mol dm−3, 10% MeOH + H2O, 25.0 °C). The reaction was reversible and displayed monophasic kinetics; the dominant path involved Fe(OH)(OH2) 5 2+ and LH 4 2+ . The mechanism is essentially a dissociative interchange (I d) and the dissociation of the aqua ligand from the encounter complex, [Fe(OH2)5OH2+, H4L2+] is rate limiting. The ligand binds iron(III) in a bidentate ([Fe(H3L)]4+), tetradentate ([Fe(H2L)]3+), pentadentate ([Fe(HL)]2+) and hexadentate fashion ([FeL]+) under varying pH conditions. Iron(III) promoted deprotonation of the amide and phenol moieties and chelation driven deprotonation of the sec-NH 2 + of the trien spacer unit are in tune with the above proposition. The mixed ligand complexes, [FeIII(LH)(X)] (X = N 3 , NCS, ACO) are also reversibly formed in solution thus indicating that there is a replaceable aqua ligand in the complex conforming to its octahedral coordination, [Fe(LH)(OH2)]2+, the bound ligand is protonated at the sec-NH site. Despite the multidentate nature of the ligand the FeIII complexes are prone to reduction by sulfur(IV) and ascorbic acid. The redox reactions of different iron(III) species, FeIII(LHi) which involved ternary complex formation with the reductants have been investigated kinetically as a function of pH, [SIV]T and [ascorbic acid]T. The substantial pK perturbation of the bound ascorbate in [Fe(LH)(HAsc/Asc)]+/0 (ΔpK {[Fe(LH)(HAsc)] − HAsc − } > 6) is considered to be compelling evidence for chelation of HAsc/Asc2− leading to hepta coordination of iron(III) in the ascorbate complexes. A novel binuclear complex with composition, [FeIII 2C20N4H35O11 (NO3)] has been synthesized and characterized by i.r., u.v.–vis, e.s.r., e.s.i.-Mass, 57Fe Mossbauer spectroscopy and magnetic moment measurements. The complex was isolated as a mixture of two forms C 1 and C 2 with 75.3 and 24.7%, respectively as computed from Mossbauer data. The isomer shift (δ) (quadrupole splitting, ΔE Q) are 0.32 mm s−1 (0.75 mm s−1) and 0.19 mm s−1 (0.68 mm s−1) for C 1 and C 2, respectively. The variable temperature magnetic moment measurements (10–300 K) of the sample showed that C 1 is an oxo dimer exhibiting antiferromagnetic interaction between the iron(III) atoms (S 1 = S 2 = 5/2, J = − 120 cm−1) while the dimer C 2 is a high spin species (S 1 = S 2 = 5/2) and exhibits normal paramagnetism obeying the Curie law. The cyclic voltametry response of the sample (DMF, [TEAP] = 0.1 mol dm−3) displayed quasi-reversible responses at − 0.577 V and − 1.451 V (versus SCE). This is in tune with the fact that the C 2 species reverts rapidly in solution to the relatively more stable oxo-bridged dimer (C 1) which is reduced in two sequential steps: C1 + e → [FeL]+ + FeII; [FeL]+ + e → FeIIL, the high labilility of the FeII complex is attributed to the irreversibility. The X-band e.s.r. spectrum of the polycrystalline sample at room temperature displayed a weak (unresolved) band at g = 4.2 and a strong band at g = 2.0 with hyperfine splitting due to the coordinated nitrogen (I = 1). At 77 K the band at g = 4.2 is intensified while that at g = 2 is broadened to the extent of near disappearance in agreement with the presence of the exchange coupled iron(III) centres. Electronic supplementary material Electronic supplementary material is available for this article at and accessible for authorised users. An erratum to this article is available at .  相似文献   

9.
The dinuclear gold(III) complex, [Au2(HL)(L)2](ClO4)3(OH) (I) (HL = 1,3-diaminopropane), with two amide bridges has been synthesized for the first time. According to the X-ray diffraction data, the crystal structure of complex I consists of the complex cations [Au2(HL)(L)2]4+ and anions ClO4 and OH. The coordination sites AuN4 are insignificantly distorted squares. In the four-membered ring Au2N2, the gold atoms are bound by the bridging nitrogen atoms of the deprotonated primary amine.  相似文献   

10.
Quantum chemical calculations of the structure and solvation energies of mono- and dianions of Roussin’s red salt esters [Fe2(μ-RS)2(NO)4] (R = Me, Et, Pri, But) in solutions in THF and acetonitrile were carried out. In monoanions, an additional electron is localized on one Fe(NO)2 fragment, which leads to significant structural distortion of the anion compared to neutral molecule. The second electron is localized on the other Fe(NO)2 fragment; this causes symmetrization of the dianion geometry. There are good linear correlations between the calculated and experimental redox potentials of these systems. A relationship was proposed for estimation of the redox potentials of related iron—nitrosyl complexes. The standard redox potentials of the complex with R = Ph in water, DMSO, and acetonitrile evaluated using this expression lie between −0.5 and −0.6 V.  相似文献   

11.
Binuclear iron nitrosyl complex Na2[Fe2(S2O3)2(NO)4] · 4H2O (I) was synthesized by the reaction of iron(II) sulfate with sodium thiosulfate in the flow of NO gas. According to X-ray diffraction data, the [Fe2(S2O3)2(NO)4]2– anion has binuclear centrosymmetric structure with Fe atoms bonded by the µ-S atoms of thiosulfate groups. The isomeric shift for complex I =0.168(1) mm/s and quadrupole splitting E Q =1.288 mm/s at T=80 K. When heated, complex I transforms to Na2[Fe2(S2O3)2(NO)4] (II), whose unit cell parameters found by X-ray diffraction method differ from those of complex I. The process of transformation of I to II was studied by calorimetric method. Complex I transforms to complex II without chemical decomposition, which was confirmed by IR and mass spectroscopy data.__________Translated from Koordinatsionnaya Khimiya, Vol. 31, No. 5, 2005, pp. 323–328.Original Russian Text Copyright © 2005 by Sanina, Aldoshin, Rudneva, Golovina, Shilov, Shulga, Martynenko, Ovanesyan.  相似文献   

12.
A complex of the composition KNa3[Fe3O(CH3COO)6(H2O)3]3 [α-P2W17Fe(H2O)O61]·32.5H2O (I) was obtained by interaction of FeCl3·6H2O and phosphotungstate K102-P2W17O61]·20H2O in an acetate buffer with a yield of 52%. Compound I was characterized by single crystal X-ray phase analysis and IR spectroscopy. In the crystal structure, the Na and K cations bind [Fe3O(CH3COO)6(H2O)3]+ trinuclear cations and [α-P2W17Fe(H2O)O61]7− heteropolytungstate anions into infinite zigzag chains. Original Russian Text Copyright ? 2005 by N. V. Izarova, M. N. Sokolov, A. V. Virovets, H. G. Platas, and V. P. Fedin __________ Translated from Zhurnal Strukturnoi Khimii, Vol. 46, No. 1, pp. 149–155, January–February, 2005.  相似文献   

13.
Under similar hydrothermal synthetic conditions, the reactions of Fe(NO3)3/FeCl2, CuCl2, NiCl2, and CdCl2 with phenanthroline (phen) and 3,3′,4,4′-biphenyltetracarboxylic acid (H4BPTC) afforded complexes [Fe(phen)3](H3BPTC)2 (1), [Cu(phen)(BPTC)0.5 · H2O] · H2O (2), [Ni3(phen)3(BPTC)1.5(H2O)5] · 4H2O (3) and [Cd(phen)(BPTC)0.5] · H2O (4). The short Fe–N distance in the monomeric Fe(phen)3(H3 BPTC)2 (1) shows that the Fe(II) is in a low-spin state. H3 BPTC4− acts as a counter-ion in this complex. In [Cu(phen)(BPTC)0.5 · H2O] · H2O (2), the central Cu(II) is five-coordinated in a square-pyramidal geometry. The ligand BPTC4− is centrosymmetric and the four deprotonated carboxylic groups of BPTC4− are coordinated to four different copper ions to form a 1D ladder complex indicating a comparatively strong coordination. In [Ni3(phen)3(BPTC)1.5(H2O)5] · 4H2O (3), all nickel(II) atoms are in an octahedral coordination environment. There are two different BPTC4− ligands; one is centrosymmetric and the other is asymmetric. Metal ions are linked through fully deprotonated BPTC4− ligands to form a 2D metal-organic sheet. [Cd(phen)(BPTC)0.5] · H2O (4) has a 3D metal-organic framework. TG, IR, and fluorescence data for the complexes are presented.  相似文献   

14.
Mannich reaction of 2-Amino propanol, 2-tert-butyl-4-methylphenol, and formaldehyde in the ratio of 1:2:2 provides a new compound, N-(1-propanol)-N,N-bis(3-tert-butyl-5-methyl-2-hydroxybenxyl)amine (H3L), which has been characterized by X-ray crystallography and elemental analysis. In the presence of Et3N, the reaction of H3L and FeCl3·6H2O gives a dinuclear Fe(III) complex [Fe2L2] 1, which has been characterized by X-ray crystallography, magnetic measurement, and cyclic voltammetry. The value of μeff at room temperature (5.97 μB) is much less than the expected spin-only value (8.37 μB) of two high spin (hs) Fe3+ (S = 5/2) ions [μ = g[∑ZS(S + 1)]1/2], indicating there are strong coupling interactions between Fe3+ ions. The magnetic behavior of 1 denotes the occurrence of intramolecular antiferromagnetic interactions (J = −13.35 cm−1 ). CV of 1 reveals two reversible waves at 0.433 and 1.227 V versus AgCl/Ag, which can be ascribed to the successive redox coupling of FeIIFeII/FeIIIFeII and FeIIIFeII/FeIIIFeIII, respectively.  相似文献   

15.
This article describes recent developments in chemical study on a series of butterfly-shaped μ-CO-containing Fe/E (E = S, Se, Te) cluster salts. These salts include eleven novel cluster anions, which are the single butterfly one μ-CO-containing [(μ-RE)(μ-CO)Fe2(CO)6]- (A), the double butterfly two μ-CO-containing {[(μ-CO)Fe2(CO)6]2(μ-EZE-μ)}2- (B, E = S; C, E = Se), the triple butterfly three μ-CO- containing {[(μ-CO)Fe2(CO)6]3[(μ-SCH2CH2)3N]}3- (D), {[(μ-CO)Fe2(CO)6]3[1,3,5-(μ-SCH2)3C6H3]}3- (E), {[(μ- CO)...  相似文献   

16.
The mononuclear Cu(II) complex [Cu(phen)(H2O)(NO3)2] (1), obtained by the reaction of 1,10-phenanthroline with Cu(NO3)2·3H2O in methanol solution, reacts with anionic ligands SCN, AcO, N3 and PhCO2 in MeOH solution to form the stable binuclear complexes [Cu2(H2O)2(phen)2(μ-X)2]2 (NO3)2, where X = SCN (2), AcO (3), N3 (4) or PhCO2 (5). The molecular structure of complex 3 was determined by single-crystal X-ray diffraction studies. These complexes were characterized by electronic, IR, ESR, magnetic moments and conductivity measurements. The electrochemical behaviour of the complexes was investigated by cyclic voltammetry. The interactions of these complexes with calf thymus DNA have been investigated using absorption spectrophotometry. Their DNA cleavage activity was studied on double-stranded pBR322 plasmid DNA using gel electrophoresis experiments in the absence and presence of H2O2 as oxidant.  相似文献   

17.
A new method for the synthesis of heterometallic clusters Os3M is developed. The reactions of hydridocarbonyl cluster (μ-H)2Os3(CO)10 (I) with binuclear carbonyls Co2(CO)8 and Fe2(CO)9 in the presence of 1,4-diazabicyclo[2.2.2]octane (Dabco) afford anionic complexes [Os3Co(CO)13] (II) and [HOs3Fe(CO)13] (III) with the counterion N2C6H13+. Similar reactions with halide complexes [MCp*Cl2]2 (M = Rh and Ir) yield neutral complexes [Os3M(CO)10(μ-H)(μ-Cl)] (M = Rh(IV) and Ir(V)). The reactions occur rapidly at room temperature with high yields. The newly obtained clusters are characterized by the data of IR and 1H NMR spectroscopy, elemental analysis, and X-ray diffraction analysis.  相似文献   

18.
Solutions of Fe2(NO)4I2 in DMF exhibit EPR spectra characteristic of [Fe(NO)2]+ at concentrations of 2 x 10?4 mol dm?3, and of an equilibrium mixture of [Fe(NO)2+, Fe(NO)2I, and [Fe(NO)2I2]? at higher concentrations: in THF solutions only Fe(NO)2I is observed, regardless of concentration. Addition of excess halide ions X? (X=Cl, Br, I) to the DMF solution yields [Fe(NO)2X2]?, but addition of excess I? or Br? to the THF solution yields [Fe(NO)2I2? or Fe2(NO)4Br2 respectively. In mixed THF/Et3N solutions, mixtures of [Fe(NO)2]+, Fe(NO)2I, and [Fe(NO)2I2]? are again formed, and subsequent addition of a thiol RSH causes formation of [Fe(NO)2(SR)2]?, a precursor of Fe2(NO)4(SR)2. A scheme is suggested to describe the steps in the preparatively useful conversion of Fe2(NO)4I2 into Fe2(NO)4(SR)2.  相似文献   

19.
Papánková  B.  Vrbová  M.  Boča  R.  Šimon  P.  Falk  K.  Miehe  G.  Fuess  H. 《Journal of Thermal Analysis and Calorimetry》2002,67(3):721-731
Heat flow to [Fe(bzimpy)2](ClO4)2⋅0.25H2O complex (bzimpy=2,6-bis(benzimidazol-2-yl)pyridine) (I) was measured between 300 and 460 K by differential scanning calorimetry. This exhibits a well-developed peak characteristic of the first-order phase transitions at temperature 403 K. The enthalpy and entropy of transition from low-spin to high-spin state has been determined to be ΔH=17 kJ mol−1 and ΔS=43.0 Jmol−1 K−1. Heat flow to [Fe(bzimpy−1H)2]⋅H2O complex (bzimpy −1H=deprotonated bzimpy) (II) was measured between 300 and 580 K. The spin crossover in this system is accompanied with liberation of crystal water on the first heating. To monitor the structural changes during the spin crossover, powder diffraction data have been collected as a function of temperature. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

20.
Two new cyano-bridged trinuclear heterometallic complexes [Sr2(Phen)4(CF3CO2)(H2O)3Fe(CN)6]·2H2O (1) [Ca2(Phen)4(CF3CO2)(H2O)Co(CN)6]·2H2O (2) (where Phen=1,10-phenanthroline) have been synthesized and their crystal structures have been determined. The structure of complex (1) features a central [Fe(CN)6]3− unit that links a monocation, [Sr(Phen)2(OH2)(OOCCF3)]+ and a dication, [Sr(Phen)2(OH2)2]2+ via two trans cyanide bridges. The complex (2) features a central [Co(CN)6]3− unit that links two monocations of [Ca(Phen)2(OH2)(OOCCF3)]+ (the positions of the trifluoro acetate and water molecules are disordered over two positions) via two trans cyanide bridges. Each metal atom is seven coordinated and achieves pentagonal bipyramidal geometry. Two cocrystallized water molecules are present in both the complexes. The presence of an extensive network of hydrogen bonding imparts the overall stability to both the systems.  相似文献   

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